Division of Nephrology, Department of Internal Medicine, Carver College of Medicine, University of Iowa, Iowa City, Iowa, USA.
Division of Nephrology, Department of Medicine, Tri-Service General Hospital, National Defense Medical Center, Taipei, Taiwan.
Curr Opin Nephrol Hypertens. 2024 Sep 1;33(5):518-525. doi: 10.1097/MNH.0000000000001007. Epub 2024 Jun 24.
Postnatal renal tubule development is critical to adult kidney function. Several postnatal changes regulate the differentiation and proliferation of renal tubular cells. Here, we review the literature and our efforts on thick ascending limb (TAL) development in Bartter syndrome (BS).
Glomerular filtrate quickly increases after birth, imposing fluid shear stress and circumferential stretch on immature renal tubules. Recent studies showed that kidney organoids under flow (superfusion) have better development of tubular structures and the expression of cilia and solute transporters. These effects are likely mediated by mechanosensors, such as cilia and the piezo1 channel. Improved renal oxygenation and sodium pump-dependent active transport can stimulate mitochondrial respiration and biogenesis. The functional coupling between transport and mitochondria ensures ATP supply for energy-demanding reactions in tubular cells, including cell cycle progression and proliferation. We recently discovered that postnatal renal medulla maturation and TAL elongation are impaired in Clc-k2-deficient BS mice. Primary cultured Clc-k2-deficient TAL cells have G1-S transition and proliferation delay. These developmental defects could be part of the early pathogenesis of BS and worsen the phenotype.
Understanding how tubular flow and transepithelial ion fluxes regulate renal tubule development may improve the treatment of congenital renal tubulopathies.
出生后肾小管的发育对于成人的肾脏功能至关重要。有几个出生后的变化调节着肾小管细胞的分化和增殖。在这里,我们综述了巴特综合征(BS)中厚升支(TAL)发育的文献和我们的研究进展。
出生后肾小球滤过率迅速增加,对未成熟的肾小管施加流体剪切力和周向拉伸。最近的研究表明,在流动(灌注)条件下的肾类器官具有更好的管状结构发育和纤毛及溶质转运体的表达。这些影响可能是由机械感受器介导的,如纤毛和Piezo1 通道。改善肾脏的氧合和钠泵依赖的主动转运可以刺激线粒体呼吸和生物发生。转运和线粒体之间的功能偶联确保了能量需求反应所需的 ATP 供应,包括细胞周期进程和增殖。我们最近发现 Clc-k2 缺陷型 BS 小鼠的出生后肾髓质成熟和 TAL 伸长受损。原代培养的 Clc-k2 缺陷型 TAL 细胞有 G1-S 期过渡和增殖延迟。这些发育缺陷可能是 BS 早期发病机制的一部分,并使表型恶化。
了解管状流动和跨上皮离子流如何调节肾小管的发育可能会改善先天性肾小管病变的治疗效果。